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  Events - October 2013

Thermo Scientific Annual Mass Spectrometry Users Meeting

22 Oct 2013 - 24 Oct 2013 - Various - USA

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Join Thermo Scientific at one of three locations for a day of interactive presentations and discussions. Learn how scientists and researchers are transforming science by applying innovative Thermo Scientific* mass spectrometry solutions.

Guest presenters from Harvard Medical School, Stanford, Michigan State University, Pfizer and Bristol Meyers Squibb and other organizations will describe how they apply the latest high resolution accurate mass mass spectrometry technology to a variety of challenging life science experiments.

Oct. 22, 2013, Somerset, NJ.
•    Wilhelm Haas, Massachusetts General Hospital: Transforming Protein Quantitation with Thermo Scientific Orbitrap Fusion Tribrid Mass Spectrometer
•    Josh Coon, University of Wisconsin: NeuCode SILAC and Parallel Reaction Monitoring using the Orbitrap Fusion Tribrid MS
•    Gavin Reid, Michigan State University: Mass Spec Strategies for Comprehensive Lipidome Analysis to Identify Lipid Biomarkers of Disease
•    Jessy YY Fan, Pfizer: Quantification of Therpeutic Protein Targets using Immunoaffinity and High Resolution Mass Spectrometry
•    David Pirman, Pfizer: Monitoring the Metabolic Fate of Biological Substrates by High Resolution Mass Spectrometry

October 22, 2013, Foster City, CA
•    Shenheng Guan, University of California, San Francisco: Orbitrap-based Native Mass Spectrometry for Characterization of Large Intact Protein Complexes
•    Livia Eberlin, Stanford University: Desorption of Electrospray Ionization Mass Spectrometry Imaging in Biomedical Research
•    Christopher Adams, Stanford University: Current State of Structural Proteomics
•    Dan McKemie, University of California, Davis: Analysis of Morphine and Morphine Metabolites

October 24,Cambridge, MA.
•    Steve Gygi, Harvard Medical School: Transforming Protein Quantitation with Thermo Scientific Orbitrap Fusion Tribrid Mass Spectrometer
•    Anna Merrill, University of Wisconsin: NeuCode SILAC and Parallel Reaction Monitoring using the Orbitrap Fusion Tribrid MS
•    Jack Henion Quintiles: High Resolution MS for the Quantitative Determination of Guanfacine in Dried Plasma Spots Derived from Molecular Filtration of Whole Blood

Further information
Scientific News
High Throughput Mass Spectrometry-Based Screening Assay Trends
Dr John Comley provides an insight into HT MS-based screening with a focus on future user requirements and preferences.
Kitchen Utensils Can Spread Bacteria Between Foods
In a recent study researchers found that produce that contained bacteria would contaminate other produce items through the continued use of knives or graters—the bacteria would latch on to the utensils commonly found in consumers' homes and spread to the next item.
Exploring the Causes of Cancer
Queen's research to understand the regulation of a cell surface protein involved in cancer.
Safer, Faster Way To Remove Pollutants From Water
Using nanoparticles filled with enzymes proves more effective than current methods.
Drug May Prevent Life-Threatening Muscle Loss in Advanced Cancers
New data describes how an experimental drug can stop life-threatening muscle wasting (cachexia) associated with advanced cancers and restore muscle health.
Ancient Viral Molecules Essential for Human Development
Genetic material from ancient viral infections is critical to human development, according to researchers at the Stanford University School of Medicine.
Novel Tumor Treatment
In the first published results from a $386,000 National Cancer Institute grant awarded earlier this year, a paper by Scott Verbridge and Rafael Davalos has been published.
Speeding Up the Process of Making Vaccines
System uses a freeze-dry concept to develop "just-add-water" solution.
Chemical Design Made Easier
Rice University scientists prepare elusive organocatalysts for drug and fine chemical synthesis.
New Analysis Technique for Chiral Activity in Molecules
Professor Hyunwoo Kim of the Chemistry Department and his research team have developed a technique that can easily analyze the optical activity of charged compounds by using nuclear magnetic resonance (NMR) spectroscopy.
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